CN219847935U - Finalized container board house integrating automatic fire-fighting spraying system - Google Patents

Finalized container board house integrating automatic fire-fighting spraying system Download PDF

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Publication number
CN219847935U
CN219847935U CN202321161468.XU CN202321161468U CN219847935U CN 219847935 U CN219847935 U CN 219847935U CN 202321161468 U CN202321161468 U CN 202321161468U CN 219847935 U CN219847935 U CN 219847935U
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China
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fire
fighting
automatic
pipe
container board
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CN202321161468.XU
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Chinese (zh)
Inventor
王冰
潘尚昆
陈礼
黄凯
韩丁
彭建勇
吴亚磊
谷潇
方天敕
张哲�
吉泽宇
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China Tiesiju Civil Engineering Group Co Ltd CTCE Group
Second Engineering Co Ltd of CTCE Group
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China Tiesiju Civil Engineering Group Co Ltd CTCE Group
Second Engineering Co Ltd of CTCE Group
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Priority to CN202321161468.XU priority Critical patent/CN219847935U/en
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Abstract

The utility model provides a collection automatic fire control spray system's design container board house, includes the automatic fire control spray system of fixing on the container board house, automatic fire control spray system is including setting up fire control branch pipe, at least one fire control spray tube that is fixed in corresponding box house interior top on the container board house, fire control spray tube intercommunication fire control branch pipe, install at least one temperature-sensing fire control shower nozzle on the fire control spray tube, install the automatic booster pump of branch pipe on the fire control branch pipe. The scheme has simple structure and easy implementation, and after being connected with municipal pipe network water sources or fire-extinguishing supply equipment, in use, the fire-extinguishing box can be rapidly covered and sprayed in a box room in a short time at the initial stage of fire occurrence, thereby playing a role in controlling the fire condition and even extinguishing fire, providing valuable time for people to evacuate, and minimizing the loss and harm caused by the fire.

Description

Finalized container board house integrating automatic fire-fighting spraying system
Technical Field
The utility model relates to a finalized container board house integrating an automatic fire-fighting spraying system.
Background
The container board house is one with container as basic unit and through modification. Because of being firm and durable, the building is convenient, and is commonly used as office and living buildings in temporary engineering places such as construction sites.
As temporary construction, electricity consumption, fire consumption and the like have a plurality of potential safety hazards, but the board core material of the container board house has poor fire resistance, if the fire disaster happens, the rapid fire-fighting rescue cannot be obtained, and serious safety accidents such as casualties, asset loss and the like are easily caused, so that the society is affected seriously.
Disclosure of Invention
The utility model aims to solve the technical problem of providing a finalized container board house integrating an automatic fire-fighting spraying system.
In order to solve the technical problems, the utility model adopts the following technical scheme: the utility model provides a collection automatic fire control spraying system's design container board house, includes at least one box room, fixes the automatic fire control spraying system on the container board house, automatic fire control spraying system is including setting up the fire control branch pipe on the container board room, being fixed in the fire control spray tube at top in the corresponding box room, fire control spray tube intercommunication the fire control branch pipe, install at least one temperature-sensing fire control shower nozzle on the fire control spray tube, install the automatic booster pump of branch pipe on the fire control branch pipe. The input of fire control branch pipe can insert the pipe network interface and/or the supply equipment that puts out a fire of administrative pipe network feed pipe, when the conflagration breaks out, and the temperature in the air rises, and after the glass ball in the temperature-sensing fire control shower nozzle received high temperature, inside liquid will begin to expand, and after having exceeded expansion temperature, liquid will glass ball to prop broken, and the shower nozzle starts, and the fire extinguishing agent flows in the pipeline, and pressure drops, and the automatic booster pump of branch pipe starts, and water or fire extinguishing agent are through the stable diffusion in the fire box room of putting out a fire of shower nozzle.
In certain embodiments, the automatic fire sprinkler system includes a pipe network interface and/or fire suppression supply device accessible to a municipal pipe network water supply pipe, the pipe network interface being juxtaposed with the fire suppression supply device to access an input of the fire branch pipe.
In some embodiments, the fire-extinguishing supply device comprises a storage tank for storing fire-extinguishing agent, and a fire-extinguishing agent output pipe connected between the output end of the storage tank and the fire-extinguishing branch pipe, and the fire-extinguishing agent output pipe is provided with a fire-extinguishing agent output automatic booster pump.
In certain embodiments, the fire extinguishing agent is water or a water-based fire extinguishing material.
In some embodiments, a water injection pipe is connected between the input end of the storage tank and the municipal pipe network water supply pipeline, and a valve is installed on the water injection pipe.
In certain embodiments, the storage bin is disposed on the ground.
In some embodiments, the fire-fighting branch pipes comprise fire-fighting branch pipes which are arranged on the front surface or the rear surface of the container board room and extend along the up-down direction, the upper end parts of the fire-fighting branch pipes are connected with the output ends of the branch pipe automatic booster pumps, the inner connecting pipes which extend along the left-right direction are also fixed on the inner top of each box room, the fire-fighting spray pipes which extend along the front-back direction are connected with the inner connecting pipes, at least one corresponding inner connecting pipe in each box room is connected with the fire-fighting branch pipes, and the inner connecting pipes of the other two adjacent box rooms are connected through quick-connection hoses.
In some embodiments, the number of the temperature sensing fire-fighting spray heads on each fire-fighting spray pipe is two, and each temperature sensing fire-fighting spray head is 13-18cm from the ceiling in the box room and 1m from the front side wall or the rear side wall of the box room which are close.
In certain embodiments, the temperature-sensitive fire sprinkler is a 93 ℃ temperature-sensitive fire sprinkler suitable for use in a kitchen or a 68 ℃ temperature-sensitive fire sprinkler suitable for use in an office accommodation.
In certain embodiments, the manifold automatic booster pump is disposed on top of a container board room.
The scope of the present utility model is not limited to the specific combination of the above technical features, but also covers other technical features formed by any combination of the above technical features or their equivalents. Such as those described above, and those disclosed in the present utility model (but not limited to) having similar functions, are replaced with each other.
Due to the application of the technical scheme, compared with the prior art, the utility model has the following advantages: this scheme container board house fixed mounting has automatic fire control spraying system, and simple structure is easy to implement, inserts municipal pipe network water source or puts out a fire after supplying with equipment, in use, can cover the spraying in the box house rapidly in the early stage of conflagration emergence shorter time, plays the control condition of a fire, and even the effect of putting out a fire provides valuable time for personnel evacuation, reduces loss and harm that the conflagration brought to minimum.
Drawings
FIG. 1 is a schematic diagram of an automatic fire sprinkler system;
FIG. 2 is a schematic diagram of the layout of an automatic fire sprinkler system in three adjacent boxes on the same floor;
FIG. 3 is a schematic view in partial cross-section A-A of FIG. 2;
wherein: 1. a box house; 2. an automatic fire sprinkler system; 21. fire branch pipes; 21a, fire fighting branch pipes; 22. an intra-room connecting pipe; 23. a fire fighting nozzle; 24. a temperature sensing fire fighting nozzle; 25. a branch pipe automatic booster pump; 26. a pipe network interface; 27. quickly connecting a hose; 3. fire extinguishing supply equipment; 31. a storage box; 32. a fire extinguishing agent delivery pipe; 33. the fire extinguishing agent is output from the automatic booster pump.
Description of the embodiments
As shown in the drawings, the embodiment is a three-layer building formed by constructing nine box houses 1 with standard areas up and down and left and right, wherein each layer is provided with three box houses. An automatic fire-fighting spraying system 2 is fixedly arranged on the container board house.
As shown in figure 1, the automatic fire-fighting spraying system 2 adopts DN25 galvanized steel pipes as fire-fighting pipelines, and comprises fire-fighting branch pipes 21 arranged on the outer side parts of container board houses, and branch pipe automatic booster pumps 25 are arranged on the fire-fighting branch pipes 21, in the embodiment, the branch pipe automatic booster pumps 25 are arranged on the tops of container board houses, and booster pumps with the lift of 12m and the flow rate of more than 1.5m < 2 >/h are adopted, so that the water pressure in the fire-fighting branch pipes can meet the use requirement of the spraying system. The fire branch 21 has a pipe network interface 26 and equipment interface at its input. The pipe network interface 26 is connected to the municipal pipe network water supply pipeline.
As shown in fig. 2 and 3, the automatic fire-fighting spraying system 2 further comprises nine fire-fighting spraying pipes 23 which are respectively fixed at the inner top of the corresponding box room 1 and extend along the front-back direction, nine connecting pipes 22 which are respectively fixed at the inner top of the corresponding box room 1 and extend along the left-right direction, the input ends of the fire-fighting spraying pipes 23 are connected to the middle part of the connecting pipes 22, and two temperature-sensing fire-fighting spray heads 24 are arranged on each fire-fighting spraying pipe 23. Each temperature-sensing fire-fighting nozzle 24 is 15cm away from the ceiling in the box room 1, 1m away from the front side wall or the rear side wall of the box room 1, and the distance between the two temperature-sensing fire-fighting nozzles 24 is 4 meters. The water source or the fire extinguishing agent can be effectively sprayed when the temperature sensing fire control spray heads 24 are started, each temperature sensing fire control spray head 24 can cover the range of about 10m < 2 > according to calculation, and two temperature sensing fire control spray heads 24 can effectively cover the inner area of a house. The two kinds of temperature sensing fire control shower nozzles 24 are applicable to the 93 ℃ temperature sensing fire control shower nozzle 24 in a kitchen and the 68 ℃ temperature sensing fire control shower nozzle 24 applicable to an office accommodation, and are purchased from the market, and detailed structures are not repeated.
As shown in fig. 1 to 3, the fire branch pipe 21 comprises a fire branch pipe 21a which is arranged outside the rear of the container board room and extends along the up-down direction, the upper end of the fire branch pipe 21a is connected with the output end of a branch pipe automatic booster pump 25 positioned at the roof, the intra-room connecting pipe 22 of the first box room 1 of each layer is connected with the fire branch pipe 21a, and the intra-room connecting pipes 22 of the other two box rooms 1 are connected through quick connecting hoses 27. That is, the fire-fighting lance 23 communicates with the fire-fighting branch pipe 21 through the corresponding in-house connection pipe 22.
As shown in fig. 1, the automatic fire sprinkler system 2 further includes a fire suppression supply device 3 connected to a fire suppression branch pipe 21 through a device interface. The fire-extinguishing supply device 3 comprises a storage box 31 arranged on the ground and used for storing fire-extinguishing agent, and a fire-extinguishing agent output pipe 32 connected between the output end of the storage box 31 and the fire-extinguishing branch pipe 21, wherein an automatic fire-extinguishing agent output booster pump 33 is arranged on the fire-extinguishing agent output pipe 32, the automatic booster pump adopts a lift of 18m, and the flow is more than 2.5m < 2 >/h, so that the storage box 31 is ensured to supply water stably to various dormitories. An external water source is connected in parallel with the fire-extinguishing supply device 3, and when the external water source is sufficient, the branch pipe automatic booster pump 25 pumps water, and the external water source takes precedence.
The above-mentioned fire extinguishing agent discharging automatic booster pump 33 and the branch pipe automatic booster pump 25 are commercially available, and detailed structures thereof are not described.
The fire extinguishing agent is water-based fire extinguishing materials which can be water or different types, and is more suitable for being used according to the requirements of different projects. A water injection pipe 34 is connected between the input end of the storage box 31 and the municipal pipe network water supply pipeline, and a valve 35 is arranged on the water injection pipe 34. Normally closed, and when the fire extinguishing agent in the storage tank 31 is used up, the valve 35 can be opened to supplement the water source.
In the use process, the water pressure state is always kept in the connection with an external water source in the fire-fighting branch pipe 21, and the temperature-sensing fire-fighting nozzle 24 is in a 'standby at any time' state; if fire occurs at the office residence, after the glass ball in the temperature sensing fire-fighting nozzle 24 receives temperature, the internal liquid will start to expand, when the expansion temperature is 68 ℃, the liquid will burst the glass ball, the temperature sensing fire-fighting nozzle 24 starts spraying water, the water in the pipeline flows, the pressure drops, the branch pipe automatic booster pump 25 automatically starts pumping water, the water pressure of the temperature sensing fire-fighting nozzle 24 can meet the fire-extinguishing and cooling requirements, and when the external water source is insufficient, the fire-extinguishing agent output automatic booster pump 33 detects the water flow in the pipeline, the pressure drops, and the automatic start starts, the fire-extinguishing agent in the storage box 31 or the branch pipe automatic booster pump 25 water pumps to the roof, thereby meeting the fire-extinguishing and cooling requirements.
The automatic fire-fighting spraying system 2 is simple in structure, is suitable for box room disassembly or construction, and is particularly suitable for temporary fireproof places such as building site dormitories. And the pre-integration of the period and the container house before delivery is performed, so that a novel container house integrating an automatic fire-fighting induction system is produced. The automatic starting at the low temperature of 68 ℃ is sensitive in reaction, the effective coverage area is large, the fireproof protection of a dormitory is effectively increased, the fire risk can be effectively reduced, the project and personnel and property safety are protected, the fireproof and fire-fighting capability is greatly enhanced, the fire-fighting requirement in the dormitory is met, and the project and personnel and property safety are protected. Effectively solves the problems of fire prevention and fire control in dormitory, and obtains good social benefit and economic benefit.
The above embodiments are merely for illustrating the technical concept and features of the present utility model, and are not intended to limit the scope of the present utility model to those skilled in the art to understand the present utility model and implement the same. All modifications made according to the spirit of the main technical proposal of the utility model should be covered in the protection scope of the utility model.

Claims (10)

1. The utility model provides a collection automatic fire control spray system's shaping container board house which characterized in that: comprises at least one box room (1), an automatic fire-fighting spraying system (2) fixed on a container board room, wherein the automatic fire-fighting spraying system (2) comprises
The fire-fighting spraying device comprises a fire-fighting branch pipe (21) arranged on a container board house, and a fire-fighting spraying pipe (23) fixed at the inner top of the corresponding container board house (1), wherein the fire-fighting spraying pipe (23) is communicated with the fire-fighting branch pipe (21), at least one temperature-sensing fire-fighting spray head (24) is arranged on the fire-fighting spraying pipe (23), and an automatic branch pipe booster pump (25) is arranged on the fire-fighting branch pipe (21).
2. The set container board house incorporating an automatic fire sprinkler system according to claim 1, wherein: the automatic fire-fighting spraying system (2) comprises a pipe network interface (26) capable of being connected with a municipal pipe network water supply pipeline and/or fire-fighting supply equipment (3), and the pipe network interface (26) and the fire-fighting supply equipment (3) are connected with the input end of the fire-fighting branch pipe (21) in parallel.
3. The set container board house incorporating the automatic fire sprinkler system according to claim 2, wherein: the fire extinguishing supply device (3) comprises a storage box (31) for storing fire extinguishing agent, a fire extinguishing agent output pipe (32) connected between the output end of the storage box (31) and the fire extinguishing branch pipe (21), and an automatic fire extinguishing agent output booster pump (33) is arranged on the fire extinguishing agent output pipe (32).
4. A modular container board house incorporating an automatic fire sprinkler system according to claim 3, wherein: the fire extinguishing agent is water or water-based fire extinguishing material.
5. The set container board room of the automatic fire sprinkler system of claim 4, wherein: a water injection pipe (34) is connected between the input end of the storage box (31) and a municipal pipe network water supply pipeline, and a valve (35) is arranged on the water injection pipe (34).
6. A modular container board house incorporating an automatic fire sprinkler system according to claim 3, wherein: the storage box (31) is arranged on the ground.
7. The set container board house incorporating an automatic fire sprinkler system according to claim 1, wherein: the fire-fighting branch pipes (21) comprise fire-fighting branch pipes (21 a) which are arranged on the outer front surface or the rear surface of a container board room and extend along the vertical direction, the upper end parts of the fire-fighting branch pipes (21 a) are connected with the output ends of the branch pipe automatic booster pumps (25), each inner top part of the container room (1) is also fixedly provided with an inner connecting pipe (22) which extends along the left-right direction, the fire-fighting spray pipes (23) which extend along the front-rear direction are connected to the inner connecting pipe (22), at least one corresponding inner connecting pipe (22) in the container room (1) is connected with the fire-fighting branch pipes (21 a), and the inner connecting pipes (22) of the other adjacent two container rooms (1) are connected through quick connecting hoses (27).
8. The set container board room of the automatic fire sprinkler system of claim 7, wherein: the number of the temperature sensing fire control spray heads (24) on each fire control spray pipe (23) is two, and each temperature sensing fire control spray head (24) is 13-18cm away from the ceiling in the box room (1) and 1m away from the front side wall or the rear side wall of the similar box room (1).
9. The set container board house incorporating an automatic fire sprinkler system according to claim 1, wherein: the temperature-sensing fire-fighting nozzle (24) is a 93 ℃ temperature-sensing fire-fighting nozzle (24) suitable for being used in a kitchen or a 68 ℃ temperature-sensing fire-fighting nozzle (24) suitable for being used in an office accommodation.
10. The set container board house incorporating an automatic fire sprinkler system according to claim 1, wherein: the branch pipe automatic booster pump (25) is arranged at the top of the container board house.
CN202321161468.XU 2023-05-15 2023-05-15 Finalized container board house integrating automatic fire-fighting spraying system Active CN219847935U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321161468.XU CN219847935U (en) 2023-05-15 2023-05-15 Finalized container board house integrating automatic fire-fighting spraying system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321161468.XU CN219847935U (en) 2023-05-15 2023-05-15 Finalized container board house integrating automatic fire-fighting spraying system

Publications (1)

Publication Number Publication Date
CN219847935U true CN219847935U (en) 2023-10-20

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ID=88343163

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321161468.XU Active CN219847935U (en) 2023-05-15 2023-05-15 Finalized container board house integrating automatic fire-fighting spraying system

Country Status (1)

Country Link
CN (1) CN219847935U (en)

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